Strain measurements on carbon-epoxy composites by lamb waves piezopolymer interdigital transducers

A. Bulletti, L. Capineri, L. Masotti, O. Occhiolini, E. Rosi
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引用次数: 1

Abstract

In this work we studied Lamb waves in composite materials for pure bending stress measurements. According to a theoretical analysis of the relationship between the strain due to pure bending and the variations of phase velocity, it turns out that this effect can be measured with a combined guided mode, obtained by the superposition of A1 and S1 modes propagating at the same group velocity. This operating condition has been obtained by proper design of interdigital transducers (IDT). In our experiment we have fabricated piezopolymer IDTs operating at 450 kHz and mounted on a cross-ply (0°/90°) 4 mm thick composite laminate, subjected to a pure bending stress on 4 points. The results obtained with this ultrasonic method are compared with standard strain gages measurements in the range (0-1500) µe.
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用lamb波压电聚合物数字间换能器测量碳环氧复合材料的应变
在这项工作中,我们研究了复合材料中的兰姆波,用于纯弯曲应力的测量。通过对纯弯曲应变与相速度变化关系的理论分析,证明了这种效应可以用以相同群速度传播的A1和S1模态叠加得到的组合导模来测量。这种工作条件是通过合理设计数字间换能器(IDT)而得到的。在我们的实验中,我们制造了工作频率为450 kHz的压电聚合物idt,并将其安装在交叉铺层(0°/90°)4毫米厚的复合层压板上,在4个点上承受纯弯曲应力。用这种超声方法得到的结果与标准应变片在(0-1500)µe范围内的测量结果进行了比较。
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